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Motorola MVME 167PA-36SE / MVME167PA-36SE Single-Board Computer

Part Number: MVME167PA-36SE

Manufacturer: Motorola

Condition: Brand New & in Stock

Product Type: Single-Board Computer

Country Of Origin : USA

Payment : T/T, Western Union

Price: USD 99

Dimensions : 191 x 102 x 58 mm (7.5 x 4.0 x 2.3 in)

Weight : 316 g (0.7 lb)

Approvals : EMC/LVD/ATEX/ROHS

Warranty : 12 months

  • Product Details
  • Installation Process
  • SPECIFICATIONS
  • MVME167PA DETAILS

The Motorola MVME167PA-36SE is a high-performance, 33MHz, single-board computer designed for scientific and industrial applications. It combines robust processing power, a flexible memory configuration, and extensive I/O features, making it an excellent choice for CISC-based embedded systems that demand reliability and high performance. This model stands out in the MVME167PA series due to its top-tier 64MB SDRAM configuration and support for high-speed data transfers.


Key Features

  1. Processor:
    • MC68040: 33MHz 32-bit microprocessor with integrated 8KB cache, memory management unit (MMU), and floating-point unit (FPU).
    • Exceptional performance for floating-point and memory-intensive operations, ideal for real-time and embedded tasks.
  2. Memory:
    • 64MB SDRAM: Configurable and capable of error correction (ECC option).
    • 4MB ROM/EPROM: For firmware storage.
    • 8KB NVRAM: Includes a real-time clock/calendar for non-volatile data storage.
  3. VMEbus Interface:
    • Fully 32-bit master/slave VMEbus interface.
    • High-performance Direct Memory Access (DMA), supporting VMEbus D64 and local memory burst cycles for fast data transfer.
    • Compatible with the IEEE 1014 VMEbus specification.
  4. I/O Features:
    • On-board Ethernet: Supports networking and remote communication.
    • On-board SCSI: For connecting high-speed storage devices.
    • Serial Ports: Four EIA-232-D asynchronous serial ports.
    • Parallel Port: For additional connectivity options.
  5. Timers and Control:
    • Four 32-bit timers for precise timing and control.
    • One watchdog timer to ensure system reliability.
    • Remote reset, abort, and status control for convenient monitoring and management.
  6. ASIC Integration:
    • Incorporates the Petra ASIC, replacing the earlier MCECC chip to enhance memory subsystem performance.
    • Simplifies hardware design while improving speed and efficiency.
  7. Additional Features:
    • Programmable configurations to maximize system integration and flexibility.
    • High reliability for scientific, industrial, and real-time applications.

Advantages

  • High Compatibility: Maintains object code compatibility with M68000 family software, allowing for seamless integration with existing systems.
  • Near-RISC Performance: While based on a CISC architecture, the MVME167PA achieves performance levels comparable to RISC systems.
  • Customizable Memory: Memory configuration switches allow users to tailor the board for applications that do not require the full 64MB.

Applications

The MVME167PA-36SE is widely used in industries that require robust processing, extensive memory, and high-speed I/O, including:

  • Scientific computation.
  • Industrial automation and control systems.
  • Telecommunications.
  • Aerospace and military systems.
  • Embedded real-time environments.

Specifications Summary

Processor MC68040, 33MHz, 32-bit
Memory 64MB SDRAM, 4MB EPROM, 8KB NVRAM
Bus Interface Full 32-bit VMEbus, DMA, D64 burst
I/O Interfaces Ethernet, SCSI, 4 serial, 1 parallel
Timers Four 32-bit timers, 1 watchdog
ASIC Petra ASIC (improves memory performance)
Power Consumption 23 watts (typical)

 

Model Overview:

  • MVME167PA-24SE: 25MHz, 16MB SDRAM.
  • MVME167PA-25SE: 25MHz, 32MB SDRAM.
  • MVME167PA-34SE: 33MHz, 16MB SDRAM.
  • MVME167PA-35SE: 33MHz, 32MB SDRAM.
  • MVME167PA-35SEB: 33MHz, 32MB SDRAM, battery backup.
  • MVME167PA-36SE: 33MHz, 64MB SDRAM.

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1. Hardware Preparation:

  • Unpack the board carefully. Inspect for damage.
  • Mount the board in a compatible VMEbus chassis. Ensure it is securely seated and grounded.
  • Connect external devices like SCSI drives or Ethernet cables.
  • Verify the power supply matches the board’s specifications.

2. System Setup:

  • Power on the system. Check status LEDs to confirm functionality.
  • Configure the VMEbus address and interrupt settings using jumpers or software tools.
  • For battery-backed models, ensure the battery is installed and charged.

3. Software Configuration:

  • Install a compatible OS, such as VxWorks or Linux.
  • Configure memory and I/O settings. Allocate resources for real-time applications.
  • Install drivers for SCSI and Ethernet. Refer to the OS documentation for guidance.

4. Testing:

  • Test the Ethernet interface by pinging another device.
  • Test the SCSI interface with a connected storage device.
  • Run diagnostics to ensure the processor, memory, and other systems function properly.

Processor

  • Type: MC68040
  • Clock Frequency: 33 MHz

Memory

  • Synchronous Dynamic RAM
    • Capacity: 64 MB
    • Read Burst Mode: 4-1-1-1
    • Write Burst Mode: 2-1-1-1
    • Shared: VMEbus/Local Bus
  • EPROM (44-pin PLCC) 16 bit
    • # of Sockets (Max. Capacity): Four (512K x 16)
    • Capacity: 4 MB

VMEbus (IEEE 1014)

  • Addressing Capabilities: A16, A24, A32
  • Master/Slave Data Transfer Capabilities: D08, D16, D32, D64, BLK, UAT
  • Arbiter: RR/PRI
  • Interrupt Handler: IRQ 1–7
  • Interrupt Generator: Any 1 of 7
  • System Controller: Yes, jumperable
  • Location Monitor: Four, LMA32

SCSI Bus

  • Controller: 53C710
  • Asynchronous: 5.0 MB/s
  • Synchronous: 10.0 MB/s
  • Local Bus DMA: Yes, with local bus burst

Ethernet

  • Controller: i82596CA
  • Local Bus DMA: Yes

TOD Clock

  • TOD Clock Device: MK48T58; 8 KB NVRAM

Timers

  • Timers: Four 32-bit, 1 µsec resolution

Serial Ports

  • Controller: CD2401
  • Count: Four (EIA-232-D DTE)
  • Async Baud Rate: 38.4 Kb/s max.
  • Sync Baud Rate: 64 Kb/s max.
  • Local Bus DMA: Yes

Power Dissipation

  • Maximum: 23 watts
  • +5V: 3.3 A max. (2.97 A typical @ 33 MHz)
  • +12V: 1.0 A max. (with off-board LAN transceiver)
  • –12V: 100 mA (typical)

Hardware Support

  • Multiprocessing Hardware Support: Four mailbox interrupts, RMW, shared RAM
  • Debug/Monitor (Included): MVME167Bug
  • Transition Module (Optional): MVME712M

Board Size

  • Card Height: 233.4 mm (9.2 in.)
  • Card Depth: 160.0 mm (6.3 in.)
  • Front Panel Height: 261.8 mm (10.3 in.)
  • Front Panel Width: 19.8 mm (0.8 in.)

Demonstrated MTBF

  • (Based on a sample of eight boards in accelerated stress environment)
  • Mean: 190,509 hours
  • 95% Confidence: 107,681 hours

Environmental

  • Temperature
    • Operating: 0°C to +55°C
    • Non-operating: 0°C to +85°C
  • Humidity
    • Operating: 5% to 90%
    • Non-operating: 5% to 90%
  • Vibration
    • Operating: 2 Gs RMS, 20–2000 Hz random
    • Non-operating: 6 Gs RMS, 20–2000 Hz random

Safety

  • All printed wiring boards (PWBs) are manufactured with a flammability rating of 94V-0 by UL-recognized manufacturers.

MVME167PA Memory Map

Address Range Devices Accessed Port Size Size Software Cache Inhibit Notes
S0000000–SDRAMsize User Programmable (On-board SDRAM) D32 SDRAMsize No 1, 2
SDRAMsize–SFF7FFFF User Programmable (VMEbus) D32/D16 3GB No 3, 4
SFF800000–SFFBFFFF ROM D32 4MB No 1
SFFC00000–SFFBFFFF Reserved 2MB
SFFE00000–SFFE1FFFF SRAM D32 128KB No
SFFE20000–SFFEFFFFF SRAM (repeated) D32 896KB No
SFFF00000–SFFFFFFF Local I/O Devices D8–D32 1MB Yes 3
SFFFFFF00–SFFFFFFF User Programmable (VMEbus A16) D32/D16 64KB No 2, 4

Notes:

  1. On-board EPROM appears at S00000000–S003FFFFF following a local bus reset. The EPROM appears at 0 until the ROM bit is cleared in the VMEchip2. The ROM bit is located at address SFFF40030 bit 20. The EPROM must be disabled at 0 before the SDRAM is enabled. The VMEchip2 and SDRAM map decoders are disabled by a local bus reset.
  2. This area is user-programmable. The suggested use is shown in the table. The SDRAM decoder is programmed in the Petra chip, and the local-to-VMEbus decoders are programmed in the VMEchip2.
  3. Size is approximate.
  4. Cache inhibit depends on devices in the area mapped.
  5. This area is not decoded. If these locations are accessed and the local bus timer is enabled, the cycle times out and is terminated by a TEA signal.

VMEbus Interface

Another design advantage of the MVME167PA is the use of a second-generation application-specific integrated circuit (ASIC). The ASIC interfaces the MVME167PA to the VMEbus for higher levels of quality, reliability, and functionality.

In addition to controlling the system’s VMEbus functions, the VMEbus interface ASIC also includes a local bus to/from the VMEbus DMA controller, VME board support features, as well as a global control and status register (GCSR) for microprocessor communications over the VMEbus. The MVME167PA also provides support for the VME D64 specification within the VMEbus interface, further enhancing system performance.


Transition Module

An optional MVME712M transition module is available to support the use of standard I/O connections for the MVME167PA. This module takes the I/O connections for the peripherals on board the MVME167PA from the P2 connection of the module to a transition module that has industry-standard connections.


Development Software

Development software for the MVME167PA includes the on-board debugger/monitor firmware and driver packages. Object and source code is available for application development. Firmware is included on the board.


Kernel and Operating System Software Support

  • Integrated Systems, Inc.: pSOS+
  • Lynx Real-Time Systems, Inc.: LynxOS
  • Microware Systems Corporation: OS-9
  • Microtec: VRTX32
  • Wind River Systems, Inc.: VxWorks

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